Methods of analysis and visualization of active fires and burnt areas of geospatial data

Olena Arsirii, Hristo Krachunov, Sergiy Smyk, Yuliia Troianovska
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Abstract

The paper deals with the characteristics of remote sensing systems for forest fires and the analysis of their consequences in terms of burned areas. . The capabilities of the American system FIRMS and the complex European system EFFIS are considered. Algorithms and methods for processing medium resolution satellite observations (MODIS) are analyzed. These images are from Terra and Aqua satellites, namely Land MOD14 / MYD14 for active fire detection and MCD45 for burned areas. The results of a comparative analysis of the best known services MCD45A1, MCD64A1, MCD14ML and ESA's Fire_CCMCD45 service from MCD45 are presented. Their capabilities for monitoring burned areas were compared. It is shown that in the absence of a common state system of remote sensing in Ukraine, it is necessary to use the capabilities of modern, publicly available geographic information systems. For example, the cloud service Google Earth Engine (GEE) is used to retrieve and process satellite data on forest fires and their consequences. The use of GEE makes it possible to obtain geospatial data of forest fire zones and their consequences. These parameters are determined by the date, region, type of multichannel satellite and its channels (layering). Based on this information, a method for processing, analyzing and visualizing geodata of forest fires and their consequences was developed. The method consists of five steps, namely: obtaining input data from publicly available geographic information web services; pre-processing (filtering) of multi-channel satellite images; calculation of indexed images; their thresholding; storing the original data in cloud storage. The following recommendations are developed: on the selection of spectral indices; construction and use of radiometric correctionmasks; clouds; and a water mask. The study on the possibility of methods to detect forest fires and their consequences is implemented using Google Earth Engine. Comparative characteristics of the number and area of forest fires obtained from the general statisticaldata using the proposed method are given. The implementation of the proposed method has increased the efficiency of detection of dangerous areas.
地理空间数据活火和燃烧区域的分析和可视化方法
本文论述了森林火灾遥感系统的特点,并从火灾面积的角度分析了森林火灾的后果。考虑了美国系统FIRMS和复杂的欧洲系统EFFIS的能力。分析了中分辨率卫星观测数据处理的算法和方法。这些图像来自Terra和Aqua卫星,即陆地MOD14 / MYD14用于主动火灾探测,MCD45用于燃烧区域。给出了最著名的MCD45A1、MCD64A1、MCD14ML服务和ESA的Fire_CCMCD45服务的比较分析结果。比较了它们监测烧伤地区的能力。它表明,在乌克兰没有一个共同的国家遥感系统的情况下,有必要利用现代的、公开的地理信息系统的能力。例如,云服务谷歌地球引擎(GEE)用于检索和处理有关森林火灾及其后果的卫星数据。利用GEE可以获得森林火区及其后果的地理空间数据。这些参数由日期、地区、多信道卫星类型及其信道(分层)决定。基于这些信息,开发了一种处理、分析和可视化森林火灾及其后果地理数据的方法。该方法包括五个步骤,即:从公开可用的地理信息web服务中获取输入数据;多通道卫星图像预处理(滤波);索引图像的计算;他们的阈值;将原始数据存储在云存储中。提出了以下建议:关于光谱指数的选择;辐射校正面罩的构造和使用;云;还有一个水面具。对检测森林火灾及其后果的方法的可能性的研究是使用谷歌地球引擎实施的。给出了用该方法从一般统计数据中得到的森林火灾数量和面积的比较特征。该方法的实施提高了危险区域的检测效率。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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